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首页> 外文期刊>Modelling and simulation in materials science and engineering >Absorption energetics and simulation of STM images for fluorobenzene on the Cu(110) surface
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Absorption energetics and simulation of STM images for fluorobenzene on the Cu(110) surface

机译:Cu(110)表面上氟苯的吸收能学和STM图像模拟

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摘要

A crystalline linear combination of atomic orbitals approximation has been used at the density functional theory level to study the adsorption of fluorobenzene on the Cu(110) surface. Adsorption energetics have been modelled and scanning tunnelling microscope (STM) images have been generated for the preferred adsorption geometry using the Tersoff and Hamann method. An adsorption energy of -93.4 kJ mol(-1) is calculated, with the fluorobenzene molecule occupying a bridging site between the rows of surface copper atoms and an adsorption height of approximately 2 Angstrom. Relaxation effects involving a tilt of the hydrogen and fluorine atoms away from the surface are accounted for in the calculations. Our predicted energetics compare favourably with experimental binding energies determined from temperature programmed desorption. The simulated STM images are compared with recent theoretical STM images of benzene.
机译:在密度泛函理论水平上,已使用原子轨道近似的晶体线性组合来研究氟苯在Cu(110)表面的吸附。已使用Tersoff和Hamann方法对吸附能进行建模,并针对优选的吸附几何结构生成了扫描隧道显微镜(STM)图像。计算得出的吸附能为-93.4 kJ mol(-1),氟苯分子占据了表面铜原子行之间的桥接点,吸附高度约为2埃。在计算中考虑了涉及氢和氟原子从表面倾斜的弛豫效应。我们预测的能量学与通过程序升温脱附测定的实验结合能相比具有优势。将模拟的STM图像与苯的最新理论STM图像进行比较。

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